• 제목/요약/키워드: Transcriptional regulator

검색결과 209건 처리시간 0.027초

중쇄지방산 강화 디아실글리세롤(MCE-DAG)이 간세포 내 콜레스테롤 흡수 및 합성 기전에 미치는 영향 (Medium-chain fatty acid enriched-diacylglycerol (MCE-DAG) accelerated cholesterol uptake and synthesis without impact on intracellular cholesterol level in HepG2)

  • 김현경;최종훈;김훈중;김우기;고광웅
    • 한국식품과학회지
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    • 제51권3호
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    • pp.272-277
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    • 2019
  • 본 연구진은 선행연구에서 MCE-DAG를 섭취한 마우스에서 혈중 총 콜레스테롤과 LDL 콜레스테롤의 감소를 보고한 바 있어, 본 연구에서 in vitro를 통해 MCE-DAG와 간의 콜레스테롤 항상성 기전의 관련성을 구명하고자 하였다. LDLR과 같은 콜레스테롤 흡수 관련 인자의 발현이 MCE-DAG에 의해 증가한 반면, LDLR을 억제하는 PCSK9의 발현은 감소하였다. 또한, 콜레스테롤 합성 관련 인자인 HMGCR의 발현이 MCE-DAG에 의해 증가하였고, 전사조절인자인 SREBP2의 발현이 증가하였다. 이러한 결과들은 콜레스테롤의 합성과 흡수가 동시에 증가하였음을 뒷받침한다. 즉, 간 내 콜레스테롤 필요량이 증가함에 따라, 간의 콜레스테롤 합성 및 흡수를 활성화시켜 콜레스테롤 항상성을 유지하는 기전이 촉진되었음을 의미한다. 하지만 간 세포 내 총 콜레스테롤 양은 MCE-DAG에서 영향을 받지 않았다. 콜레스테롤 흡수 및 합성 기전이 촉진되었음에도 세포 내 콜레스테롤 농도가 증가하지 않은 현상은 담즙산 등 콜레스테롤 분비 촉진에 의한 것일 수 있다. 이러한 추론은 추후 콜레스테롤 분비 기전을 검증할 수 있는 실험을 설계하여 검증해볼 필요성이 있다. 결론적으로 MCE-DAG는 세포 내 콜레스테롤 흡수 작용을 촉진하는 효과가 있어 추후 기능성 유지로 활용 가능할 것으로 판단된다.

Regulation of chicken vanin1 gene expression by peroxisome proliferators activated receptor α and miRNA-181a-5p

  • Wang, Zhongliang;Yu, Jianfeng;Hua, Nan;Li, Jie;Xu, Lu;Yao, Wen;Gu, Zhiliang
    • Animal Bioscience
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    • 제34권2호
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    • pp.172-184
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    • 2021
  • Objective: Vanin1 (VNN1) is a pantetheinase that can catalyze the hydrolysis of pantetheine to produce pantothenic acid and cysteamine. Our previous studies showed that VNN1 is specifically expressed in chicken liver. In this study, we aimed to investigate the roles of peroxisome proliferators activated receptor α (PPARα) and miRNA-181a-5p in regulating VNN1 gene expression in chicken liver. Methods: 5'-RACE was performed to identify the transcription start site of chicken VNN1. JASPAR and TFSEARCH were used to analyze the potential transcription factor binding sites in the promoter region of chicken VNN1 and miRanda was used to search miRNA binding sites in 3' untranslated region (3'UTR) of chicken VNN1. We used a knock-down strategy to manipulate PPARα (or miRNA-181a-5p) expression levels in vitro to further investigate its effect on VNN1 gene transcription. Luciferase reporter assays were used to explore the specific regions of VNN1 targeted by PPARα and miRNA-181a-5p. Results: Sequence analysis of the VNN1 promoter region revealed several transcription factor-binding sites, including hepatocyte nuclear factor 1α (HNF1α), PPARα, and CCAAT/enhancer binding protein α. GW7647 (a specific agonist of PPARα) increased the expression level of VNN1 mRNA in chicken primary hepatocytes, whereas knockdown of PPARα with siRNA increased VNN1 mRNA expression. Moreover, the predicted PPARα-binding site was confirmed to be necessary for PPARα regulation of VNN1 gene expression. In addition, the VNN1 3'UTR contains a sequence that is completely complementary to nucleotides 1 to 7 of miRNA-181a-5p. Overexpression of miR-181a-5p significantly decreased the expression level of VNN1 mRNA. Conclusion: This study demonstrates that PPARα is an important transcriptional activator of VNN1 gene expression and that miRNA-181a-5p acts as a negative regulator of VNN1 expression in chicken hepatocytes.

Severe choline deficiency induces alternative splicing aberrance in optimized duck primary hepatocyte cultures

  • Zhao, Lulu;Cai, Hongying;Wu, Yongbao;Tian, Changfu;Wen, Zhiguo;Yang, Peilong
    • Animal Bioscience
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    • 제35권11호
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    • pp.1787-1799
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    • 2022
  • Objective: Choline deficiency, one main trigger for nonalcoholic fatty liver disease (NAFLD), is closely related to lipid metabolism disorder. Previous study in a choline-deficient model has largely focused on gene expression rather than gene structure, especially sparse are studies regarding to alternative splicing (AS). In modern life science research, primary hepatocytes culture technology facilitates such studies, which can accurately imitate liver activity in vitro and show unique superiority. Whereas limitations to traditional hepatocytes culture technology exist in terms of efficiency and operability. This study pursued an optimization culture method for duck primary hepatocytes to explore AS in choline-deficient model. Methods: We performed an optimization culture method for duck primary hepatocytes with multi-step digestion procedure from Pekin duck embryos. Subsequently a NAFLD model was constructed with choline-free medium. RNA-seq and further analysis by rMATS were performed to identify AS events alterations in choline-deficency duck primary hepatocytes. Results: The results showed E13 (embryonic day 13) to E15 is suitable to obtain hepatocytes, and the viability reached over 95% by trypan blue exclusion assay. Primary hepatocyte retained their biological function as well identified by Periodic Acid-Schiff staining method and Glucose-6-phosphate dehydrogenase activity assay, respectively. Meanwhile, genes of alb and afp and specific protein of albumin were detected to verify cultured hepatocytes. Immunofluorescence was used to evaluate purity of hepatocytes, presenting up to 90%. On this base, choline-deficient model was constructed and displayed significantly increase of intracellular triglyceride and cholesterol as reported previously. Intriguingly, our data suggested that AS events in choline-deficient model were implicated in pivotal biological processes as an aberrant transcriptional regulator, of which 16 genes were involved in lipid metabolism and highly enriched in glycerophospholipid metabolism. Conclusion: An effective and rapid protocol for obtaining duck primary hepatocytes was established, by which our findings manifested choline deficiency could induce the accumulation of lipid and result in aberrant AS events in hepatocytes, providing a novel insight into various AS in the metabolism role of choline.

MicroRNA analysis reveals the role of miR-214 in duck adipocyte differentiation

  • Wang, Laidi;Hu, Xiaodan;Wang, Shasha;Yuan, Chunyou;Wang, Zhixiu;Chang, Guobin;Chen, Guohong
    • Animal Bioscience
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    • 제35권9호
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    • pp.1327-1339
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    • 2022
  • Objective: Fat deposition in poultry is an important factor in production performance and meat quality research. miRNAs also play important roles in regulating adipocyte differentiation process. This study was to investigate the expression patterns of miRNAs in duck adipocytes after differentiation and explore the role of miR-214 in regulating carnitine palmitoyltransferases 2 (CPT2) gene expression during duck adipocyte differentiation. Methods: Successful systems for the isolation, culture, and induction of duck primary fat cells was developed in the experiment. Using Illumina next-generation sequencing, the miRNAs libraries of duck adipocytes were established. miRanda was used to predict differentially expressed (DE) miRNAs and their target genes. The expression patterns of miR-214 and CPT2 during the differentiation were verified by quantitative real-time polymerase chain reaction and western blot. Luciferase reporter assays were used to explore the specific regions of CPT2 targeted by miR-214. We used a miR-214 over-expression strategy in vitro to further investigate its effect on differentiation process and CPT2 gene transcription. Results: There were 481 miRNAs identified in duck adipocytes, included 57 DE miRNA candidates. And the 1,046 targets genes of DE miRNAs were mainly involved in p53 signaling, FoxO signaling, and fatty acid metabolism pathways. miR-214 and CPT2 showed contrasting expression patterns before and after differentiation, and they were selected for further research. The expression of miR-214 was decreased during the first 3 days of duck adipocytes differentiation, and then increased, while the expression of CPT2 increased both in the transcriptional and protein level. The luciferase assay suggested that miR-214 targets the 3'untranslated region of CPT2. Overexpression of miR-214 not only promoted the formation of lipid droplets but also decreased the protein abundance of CPT2. Conclusion: Current study reports the expression profile of miRNAs in duck adipocytes differentiated for 4 days. And miR-214 has been proved to have the regulator potential for fat deposition in duck.

C-reactive protein accelerates DRP1-mediated mitochondrial fission by modulating ERK1/2-YAP signaling in cardiomyocytes

  • Suyeon Jin;Chan Joo Lee;Gibbeum Lim;Sungha Park;Sang-Hak Lee;Ji Hyung Chung;Jaewon Oh;Seok-Min Kang
    • BMB Reports
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    • 제56권12호
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    • pp.663-668
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    • 2023
  • C-reactive protein (CRP) is an inflammatory marker and risk factor for atherosclerosis and cardiovascular diseases. However, the mechanism through which CRP induces myocardial damage remains unclear. This study aimed to determine how CRP damages cardiomyocytes via the change of mitochondrial dynamics and whether survivin, an anti-apoptotic protein, exerts a cardioprotective effect in this process. We treated H9c2 cardiomyocytes with CRP and found increased intracellular ROS production and shortened mitochondrial length. CRP treatment phosphorylated ERK1/2 and promoted increased expression, phosphorylation, and translocation of DRP1, a mitochondrial fission-related protein, from the cytoplasm to the mitochondria. The expression of mitophagy proteins PINK1 and PARK2 was also increased by CRP. YAP, a transcriptional regulator of PINK1 and PARK2, was also increased by CRP. Knockdown of YAP prevented CRP-induced increases in DRP1, PINK1, and PARK2. Furthermore, CRP-induced changes in the expression of DRP1 and increases in YAP, PINK1, and PARK2 were inhibited by ERK1/2 inhibition, suggesting that ERK1/2 signaling is involved in CRP-induced mitochondrial fission. We treated H9c2 cardiomyocytes with a recombinant TAT-survivin protein before CRP treatment, which reduced CRP-induced ROS accumulation and reduced mitochondrial fission. CRP-induced activation of ERK1/2 and increases in the expression and activity of YAP and its downstream mitochondrial proteins were inhibited by TAT-survivin. This study shows that mitochondrial fission occurs during CRP-induced cardiomyocyte damage and that the ERK1/2-YAP axis is involved in this process, and identifies that survivin alters these mechanisms to prevent CRP-induced mitochondrial damage.

Insulin-like growth factor가 소장 점막 세포 증식에 미치는 영향

  • 윤정한
    • 한국영양학회:학술대회논문집
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    • 한국영양학회 1995년도 추계학술대회 초록
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    • pp.11-34
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    • 1995
  • Growth hormone (GH) plays a key role in regulating postnatal growth and can stimulate growth of animals by acting directly on specific receptors on the plasma membrane of tissues or indirectly through stimulating insulin-like growth factor (IGF)-I synthesis and secretion by the liver and other tissues. IGF-I and IGF-Ⅱ are polypeptides with structural similarity with proinsulin that stimulate cell proliferation by endocrine, paracrine and autocrine mechanisms. The initial event in the metabolic action of IGFs on target cells appears to be their binding to specific receptors on the plasma membrane. Current evidence indicates that the mitogenic actions of both IGFs are mediated primarily by binding to the type I IGF receptors, and that IGF action is also mediated by interactions with IGF-binding proteins (IGFBPs). Six distinct IGFBPs have been identified that are characterized by cell-specific interaction, transcriptional and post-translational regulation by many different effectors, and the ability to either potentiate or inhibit IGF actions. Nutritional deficiencies can have their devastating consequence during growth. Although IGF-I is the major mediator of GH's action on somatic growth, nutritional status of an organism is a critical regulator of IGF-I and IGFBPs. Various nutrient deficiencies result in decreased serum IGF-I levels and altered IGFBP levels, but the blood levels of GH are generally unchanged or elevated in malnutrition. Effects of protein, energy, vitamin C and D, and zinc on serum IGF and IGFBP levels and tissue mRNA levels were reviewed in the text. Multiple factors are involved in the regulation of intestinal epithelial cell growth and differentiation. Among these factors the nutritional status of individuals is the most important. The intestinal epithelium is an important site for mitogenic action of the IGFs in vivo, with exogenous IGF-I stimulating mucosal hyperplasia. Therefore, the IGF system appears to provide and important mechanism linking nutrition and the proliferation of intestinal epithelial cells. In order to study the detailed mechanisms by which intestinal mucosa is regulated, we have utilized IEC-6 cells, an intestinal epithelial cell line and Caco-2 cells, a human colon adenocarcinoma cell line. Like intestinal crypt cells analyzed in vivo or freshly isolated intestinal epithelial cells, IEC-6 cells and Caco-2 cells possess abundant quatities of both type Ⅰ and type Ⅱ IGF receptors. Exogenous IGFs stimulate, whereas addition of IGFBP-2 inhibits IEC-6 cell proliferation. To investigate whether endogenously secreted IGFBP-2 inhibit proliferation, IEC-6 cells were transfected with a full-length rat IGFBP-2 cDNA anti-sense expression construct. IEC-6 cells transfected with anti-sense IGFBP-2 protein in medium. These cells grew at a rate faster than the control cells indicating that endogenous IGFBP-2 inhibits proliferation of IEC-6 cells, probably by sequestering IGFs. IEC-6 cells express many characteristics of enterocyte, but do not undergo differentiation. On the other hand, Caco-2 cells undergo a spontaneous enterocyte differentiation. On the other hand, Caco-2 cells undergo a spontaneous enterocyte differentiation after reaching confluency. We have demonstrated that Caco-2 cells produce IGF-Ⅱ, IGFBP-2, IGFBP-3, and an as yet unidentified 31,000 Mr IGFBP, and that both mRNA and peptide secretion of IGFBP-2 and IGFBP-3 increased, but IGFBP-4 mRNA and protein secretion decreased after the cells reached confluency. These changes occurred in parallel to and were coincident with differentiation of the cells, as measured by expression of sucrase-isomaltase. In addition, Caco-2 cell clones forced to overexpress IGFBP-4 by transfection with a rat IGFBP-4 cDNA construct exhibited a significantly slower growth rate under serum-free conditions and had increased expression of sucrase-isomaltase compared with vector control cells. These results indicate that IGFBP-4 inhibits proliferation and stimulates differentiation of Caco-2 cells, probably by inhibiting the mitogenic actions of IGFs.

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절수시 Mongolian Gerbil 콩팥에서 TonEBP와 Urea transporter의 발현 변화 (Renal Expression of TonEBP and Urea Transporter in the Water-deprived Mongolian Gerbil(Meriones unguiculatus))

  • 박용덕;김성중;정주영
    • Applied Microscopy
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    • 제37권4호
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    • pp.271-280
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    • 2007
  • Tonicity responsive enhancer binding protein(TonEBP)는 콩팥에서 osmolyte의 세포내 축적을 촉매해 주는 전사조절인자로 높은 삼투농도에서 세포를 보호하는데 중요한 역할을 수행한다. 고장성환경은 TonEBP의 양적 증가와 핵 내 분포의 증가를 통해 TonEBP의 활성을 자극한다. 또한 TonEBP는 콩팥 수질내 요소축적에 중요한 역할을 하는 UT-A의 전사를 조절하는 것으로도 알려져 있다. 따라서 본 연구에서는 콩팥수질내 TonEBP와 UT-A의 기능과 상관관계를 밝히는 연구의 일환으로 다른 동물보다 급수가 제한된 환경에서 더 오래 살아남을 수 있는 수분대사능력을 가지고 있는 Mongolian gerbil을 이용하여, 절수로 인한 고장성환경의 유발에서 TonEBP와 UT-A에 대한 발현 변화를 관찰하고자 하였다. 절수에 따른 TonEBP와 UT-A의 발현 양상을 연구하기 위해, 먼저 Mongoian gerbil 각 5마리씩 3그룹으로 나누어 절수 실험을 실시하였고, 면역조직화학법을 실시하여 다음과 같은 결과를 얻었다. 정상대조군에서 TonEBP의 면역반응성은 속수질 세포들의 핵 내에 주로 분포하였으며, 절수 7일군에서 면역조직화학검사 결과, 속수질집합관에서의 염색성은 대조군에 비해 증가하였고, 특히 바깥수질 부위에 속수질에서 요세관의 가는 부분에서의 증가가 두드러졌다. 절수 14일군에서 염색성이 대조군보다 오히려 감소하였으며, 콩팥의 조직학적 손상이 관찰되었다. UT-A의 경우 바깥수질 속줄무늬층의 짧은-헨레고리가는내림부분과 정상군에서는 미약한 양성반응을 나타낸 속수질 초기부분의 긴-헨레고리가는내림부분에서 강한 발현 양상을 나타내었고, 속수질의 초기에서 중간부위의 속수질집합관도 강한 발현 양상을 확인할 수 있었다. 그러나 속수질 말단부위의 속수질집합관은 콩팥유두 끝으로 갈수록 발현량이 감소하는 것을 확인할 수 있었다. 이상의 결과는 Mongolian gerbil을 이용한 절수모델에서 증가된 콩팥수질의 Tonicity에 의해 TonEBP의 발현이 증가하고 이에 따라 UT-A의 발현도 동반하여 증가하는 것을 확인하였고, 또한 이렇게 증가된 TonEBP는 UT의 전사를 조절하여 UT를 증가시켜 오줌농축기전을 향상시키는 것으로 생각된다. 이는 속수질 세포의 스트레스에 대한 세포방어기전으로 생각된다. 그러나 절수가 계속되면 이런 적응반응에 한계를 지나쳐 오히려 TonEBP와 UT-A의 발현이 감소함을 확인 할 수 있었다.

HMGB1에 의한 alkylating DNA 손상에 의해 유도된 세포사멸의 세포괴사로의 전환 (HMGB1 Switches Alkylating DNA Damage-Induced Apoptosis to Necrosis)

  • 이수연;정의경;전현민;주민경;김초희;박혜경;강호성
    • 생명과학회지
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    • 제21권7호
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    • pp.953-960
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    • 2011
  • 세포괴사는 세포막의 파열, HMGB1을 포함한 세포 내용물의 세포외부로의 방출 등을 수반하는 세포죽음이다. HMGB1은 핵 단백질로 전사조절자로 작용하지만 세포괴사에 의해 세포 밖으로 방출되면 염증을 유발하고 암을 촉진하는 cytokine으로 작용한다. HMGB1의 과발현은 암 발생 및 항암제 저항과 밀접한 연관성을 가지고 있지만, 그 기작에 대한 연구는 미흡한 실정이다. 본 연구에서는, HMGB1이 항암제에 의한 세포 죽음에 미치는 영향을 조사하였다. 그 결과, HMGB1은 MCF-7, MDA-MB231, MDA-MB361 세포에서 cisplatin에 의한 세포사멸을 억제하고 세포운명을 세포괴사로 바꾼다는 사실을 확인하였다. HMGB1의 세포사멸-세포괴사 전환 작용을 4-HC를 처리한 세포에서도 관찰되었다. 그러나, HMGB1은 docetaxel (DOC)에 의한 세포사멸에는 영향을 주지 않음을 확인하였다. MTS를 이용하여 항암제에 의한 세포 죽음에 미치는 영향을 조사한 결과, necrotic core가 형성된 8일째 MCF-7 MTS에서 cisplatin에 의한 세포사멸이 세포괴사로 바뀌는 반면, DOC에 의한 세포사멸은 세포괴사로 전환되지 않는 것을 확인하였다. 또한 spheroid에서 HMGB1 receptor인 RAGE의 발현이 증가함을 확인하였다. 이러한 결과를 통해, HMGB1이 alkylating agent에 의한 세포사멸을 세포괴사로 전환시킴을 알 수 있었다. 따라서, alkylating agent에 의한 항암제 효능을 나타내기 위해선, 이들 항암제의 부작용 즉 세포괴사를 억제하는 전략이 필요한 것으로 생각된다.

DMBA로 유도된 햄스터 협낭암종에서 p53 유전자 변이와 mdm-2 단백의 발현에 관한 연구 (STUDY ON MUTATION OF P53 AND EXPRESSION OF MDM-2 IN DMBA INDUCED CARCINOMA OF HAMSTER BUCCAL POUCH)

  • 박용선;김경욱;이재훈;김창진
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제27권5호
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    • pp.373-384
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    • 2001
  • Cellular proliferation is an intricately regulated process mediated by the coordinated interactions of critical growth control genes. Two of these factors in mammalian cells are the p53 and mdm-2 genes. A protein product of the mem-2 oncogene has been recently shown to associate with the protein encoded by the tumor suppressor gene p53. The p53 tumor suppressor protein is stabilized in response to DNA damage and other stress signals and causes the cell to undergo growth arrest or apoptosis, thus preventing the establishment of mutations in future cellular generations. Mutation or loss of p53 is a very common event in tumor progression. It occurs in about 50% of all tumors analysed including of colon, lung, breast and liver. The cellular mdm-2 gene, which has potential transforming activity that can be activated by overexpression, is amplified in a significant percentage of human sarcoma and in other mammalian tumors. Proteins encoded by the mdm-2 gene are able to bind to the p53 protein and, when overexpressed, can inhibit p53's transcriptional activation function, thus mdm-2 can act as a negative regulator of p53 function. Experimental study was performed to observe the relationship between p53 gene mutation and mdm-2 protein expression and apply the results to the clinical activity. 36 golden syrian hamster each weighing $60{\sim}80g$ were used and painted with 0.5% DMBA by 3 times weekly on the right buccal cheek(experimental side) for 6, 8, 10, 12, 14 and 16 weeks. Left buccal cheek(control side) was treated with mineral oil as the same manner to the right side. The hamsters were sacrificed on the 6, 8, 10, 12, 14 & 16 weeks. Normal and tumor tissues from paraffin block were examined for histology and immunohistochemistry observation, and were completely dissected by microdissection and DNA from both tissue were isolated by proteins K/phenol/chloroform extraction. Segments of the hamster p53 exons 5, 6, 7 and 8 were amplified by PCR using the oligonucleotide primers, and then confirmational change was observed by SSCP respectively. The results were as follows : 1. Dysplasia at 6 weeks, carcinoma in situ at 8 weeks and invasive carcinoma from 10 weeks could be observed in experimental groups. 2. p53 mutations were detected in 10 of the 36(28%) and the exons 6(6 of the 10 : 60%) was the most hot spot area among the highy conserved region(exons 5, 6, 7 & 8). 3. Immunohistochemical study confirmed 22 of the 36(61%) of p53 expression involving 10 of p53 mutations. 4. mdm-2 expression of was showed in 3 of the 36(8%) involving 1 of the 22 of p53 expression and 2 of the 14 of p53 non-expression. From the above results, mutation of p53 gene or expression of p53 protein may have the influence of the DMBA induced carcinoma of hamster buccal pouch but the expression of mdm-2 protein may not have relationship with tumorigenesis.

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